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Complex processing of manganese bearing waste and low-grade ores by autoclaving method

机译:高压灭菌法对含锰废物和低品位矿石的综合处理

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Experimental research was carried out using representative samples of copper processing waste and the manganese processing waste disposed in Georgia to achieve secondary recovery of valuable metals from the waste. Joint autoclave oxygen leaching of different compositions of low-grade ores and waste using microwave treated samples was studied to assess recovery of metals from waste and low-grade ores. The data showed that complex utilisation of manganese and pyrite bearing waste can form the basis for a low-cost and environmentally-friendly industrial production of manganese oxide concentrates and low-carbon alloys, sulphur and copper compounds, and concentrates for gold and silver extraction. The developed methods can partially replace the standard technologies of ferroalloys industry, which uses reducing manganese oxides by carbon. This would significantly decrease the carbon monoxide and carbon dioxide emissions during production of ferromanganese and metallic manganese while reducing the emission of greenhouse gases and mitigating global warming.
机译:使用铜加工废料的代表性样品和佐治亚州处置的锰加工废料进行了实验研究,以实现从废料中回收有价值的金属。研究了使用微波处理的样品对不同成分的低品位矿石和废物进行联合高压釜氧浸出的过程,以评估废品和低品位矿石中金属的回收率。数据表明,锰和黄铁矿废料的综合利用可以构成低成本,环境友好的工业生产氧化锰精矿和低碳合金,硫和铜化合物以及用于提取金和银的精矿的基础。所开发的方法可以部分替代铁合金工业的标准技术,该技术使用碳还原锰氧化物。这将大大减少铁锰和金属锰生产过程中的一氧化碳和二氧化碳排放,同时减少温室气体排放并缓解全球变暖。

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